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Updated: Jul 7, 2025

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
Integrated Stress Response (ISR) Pathway: Unraveling Its Role in Cellular Senescence
Alexander Kalinin1,2, Ekaterina Zubkova1, Mikhail Menshikov1
1National Medical Research Centre of Cardiology Named after Academician E.I. Chazov, 121552 Moscow, Russia.
Abstract:
Cellular senescence is a complex process characterized by irreversible cell cycle arrest. Senescent cells accumulate with age, promoting disease development, yet the absence of specific markers hampers the development of selective anti-senescence drugs. The integrated stress response (ISR), an evolutionarily highly conserved signaling network activated in response to stress, globally downregulates protein translation while initiating the translation of specific protein sets including transcription factors. We propose that ISR signaling plays a central role in controlling senescence, given that senescence is considered a form of cellular stress. Exploring the intricate relationship between the ISR pathway and cellular senescence, we emphasize its potential as a regulatory mechanism in senescence and cellular metabolism. The ISR emerges as a master regulator of cellular metabolism during stress, activating autophagy and the mitochondrial unfolded protein response, crucial for maintaining mitochondrial quality and efficiency. Our review comprehensively examines ISR molecular mechanisms, focusing on ATF4-interacting partners, ISR modulators, and their impact on senescence-related conditions. By shedding light on the intricate relationship between ISR and cellular senescence, we aim to inspire future research directions and advance the development of targeted anti-senescence therapies based on ISR modulation.
Insights
The integrated stress response (ISR) pathway is a key regulator of cellular senescence, a process linked to aging and disease. Targeting ISR may lead to new anti-senescence therapies.
Area of Science:
- Cellular Biology
- Molecular Biology
- Aging Research
Background:
- Cellular senescence, marked by irreversible cell cycle arrest, contributes to age-related diseases.
- Lack of specific senescence markers hinders the development of targeted therapies.
- The integrated stress response (ISR) is a conserved network that regulates protein translation under stress.
Purpose of the Study:
- To explore the role of ISR signaling in controlling cellular senescence.
- To investigate ISR as a regulatory mechanism in senescence and cellular metabolism.
- To highlight ISR modulation as a potential strategy for anti-senescence therapies.
Main Methods:
- Review of existing literature on ISR molecular mechanisms.
- Analysis of ISR's impact on senescence and cellular metabolism.
- Examination of ATF4-interacting partners and ISR modulators.
Main Results:
- ISR signaling plays a central role in controlling cellular senescence.
- ISR regulates cellular metabolism during stress, activating autophagy and mitochondrial responses.
- ISR modulation impacts senescence-related conditions.
Conclusions:
- The ISR pathway is a critical regulator of cellular senescence and metabolism.
- Understanding ISR mechanisms offers potential for developing targeted anti-senescence drugs.
- Further research into ISR modulation can advance therapies for aging and related diseases.
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